Compact low-profile circularly polarised AMC-integrated cavity reflector wideband antenna for potential conceivable 6G access

A compact, low-profile artificial magnetic conductor (AMC)-integrated wideband antenna has been proposed for underutilised (7–8) GHz and upgraded potential 6G-band access. The design comprises of paired 90° top-bottom dipole antennas conjoined with quarter-circular loops to imitate circularly polarised radiated waves. The dipole configurations are embedded on polygonal-shaped dielectric, and an AMC cavity reflector has been asserted for overall performance enhancement. Each AMC periodic unit cells are successively arranged in 4×4 array with canterburry-cross (CC) topology. The AMC unit-cell with CC-shape asserts dominant reflection phase (ϕref) zero cross-over at 7.4 GHz with ±90° reflection magnitude (ϕMag) ranging from 6 to 8 GHz, exhibiting the potential bandwidth region. The design offers a wide 10-dB operating band of 6.5–9.5 GHz, 3-dB axial ratio from 5.8–9.25 GHz, peak boresight primary left-hand-circular-polarisation (LHCP) radiation gain of 10.6 dBic and radiation efficiency > 90%. A prototype fabricated antenna of size 50 mm × 50 mm × 10 mm has been experimented and the outcomes effectively correlate with simulated results. The potential validations show excellent performance merits to be exploited in the golden band of 6G access.

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Publication Details

Journal
International Journal of Electronics Letters
Published
2026-09-13
DOI
https://doi.org/10.1080/21681724.2026.2731898
Primary Topic
Advanced Antenna and Metasurface Technologies
Type
article
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article

Compact low-profile circularly polarised AMC-integrated cavity reflector wideband antenna for potential conceivable 6G access

J. Siddartha Varma, Jyoti Ranjan Panda, G. Anjaneyulu, Asutosh Mohanty
International Journal of Electronics Letters
Advanced Antenna and Metasurface Technologies
article

Compact low-profile circularly polarised AMC-integrated cavity reflector wideband antenna for potential conceivable 6G access

J. Siddartha Varma, Jyoti Ranjan Panda, G. Anjaneyulu, Asutosh Mohanty
article en

Abstract

A compact, low-profile artificial magnetic conductor (AMC)-integrated wideband antenna has been proposed for underutilised (7–8) GHz and upgraded potential 6G-band access. The design comprises of paired 90° top-bottom dipole antennas conjoined with quarter-circular loops to imitate circularly polarised radiated waves. The dipole configurations are embedded on polygonal-shaped dielectric, and an AMC cavity reflector has been asserted for overall performance enhancement. Each AMC periodic unit cells are successively arranged in 4×4 array with canterburry-cross (CC) topology. The AMC unit-cell with CC-shape asserts dominant reflection phase (ϕref) zero cross-over at 7.4 GHz with ±90° reflection magnitude (ϕMag) ranging from 6 to 8 GHz, exhibiting the potential bandwidth region. The design offers a wide 10-dB operating band of 6.5–9.5 GHz, 3-dB axial ratio from 5.8–9.25 GHz, peak boresight primary left-hand-circular-polarisation (LHCP) radiation gain of 10.6 dBic and radiation efficiency > 90%. A prototype fabricated antenna of size 50 mm × 50 mm × 10 mm has been experimented and the outcomes effectively correlate with simulated results. The potential validations show excellent performance merits to be exploited in the golden band of 6G access.

International Journal of Electronics Letters
Maharaj Vijayaram Gajapathi Raj College of Engineering (IN), KIIT University (IN)
Affordable and clean energy
Openalex Percentile: Top 7%
Advanced Antenna and Metasurface Technologies
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Compact low-profile circularly polarised AMC-integrated cavity reflector wideband antenna for potential conceivable 6G access — J. Siddartha Varma, Jyoti Ranjan Panda, et al. · International Journal of Electronics Letters (2026) | TGRS Research Map | TGRS